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221.
Photocatalytic ozonation of phenol and oxalic acid (OA) was conducted with a Ag^+/TiO2 catalyst and different pathways were found for the degradation of different compounds. Ag^+ greatly promoted the photocatalytic degradation of contaminants due to its role as an electron scavenger. It also accelerated the removal rate of OA in ozonation and the simultaneous process for its complex reaction with oxalate. Phenol could be degraded both in direct ozonation and photolysis, but the TOC removal rates were much higher in the simultaneous processes due to the oxidation of hydroxyl radicals resulting from synergetic effects. The sequence of photo-illumination and ozone exposure in the combined process showed quite different effects in phenol degradation and TOC removal. The synergetic effects in different combined processes were found to be highly related to the properties of the target pollutants. The color change of the solution and TEM result confirmed that Ag+ was easily reduced and deposited on the surface of Tit2 under photo-illumination, and dissolved again into solution in the presence of ozone. This simple cycle of enrichment and distribution of Ag^+ can greatly benefit the design of advanced oxidation processes, in which the sequences of ozone and photo-illumination can be varied according to the needs for catalyst recycling and the different properties of pollutants.  相似文献   
222.
Plastics such as polyvinyl chlorides (PVC) are widely used in many indoor constructed environments; however, their unbound chemicals, such as di-(2-ethylhexyl) phthalates (DEHP), can leach into the surrounding environment. This study focused on DEHP's effect on the central nervous system by determining the precise DEHP content in mice brain tissue after exposure to the chemical, to evaluate the specific exposure range. Primary neuronal-astrocyte co-culture systems were used as in vitro models for chemical hazard identification of DEHP. Oxidative stress was hypothesized as a probable mechanism involved, and therefore the total reactive oxygen species (ROS) concentration was determined as a biomarker of oxidative stress. In addition, NeuriteTracer, a neurite tracing plugin with ImageJ, was used to develop an assay for neurotoxicity to provide quantitative measurements of neurological parameters, such as neuronal number, neuron count and neurite length, all of which could indicate neurotoxic effects. The results showed that with 1 nmol/L DEHP exposure, there was a significant increase in ROS concentrations, indicating that the neuronal-astrocyte cultures were injured due to exposure to DEHP. In response, astrocyte proliferation (gliosis) was initiated, serving as a mechanism to maintain a homeostatic environment for neurons and protect neurons from toxic chemicals. There is a need to assess the cumulative effects of DEHP in animals to evaluate the possible uotake and effects on the human neuronal system from exoosure to DEHP in the indoor environment.  相似文献   
223.
Mo-modified Pd/Al2O3catalysts were prepared by an impregnation method and tested for the catalytic combustion of benzene. The catalysts were characterized by N2 isothermal adsorption, X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS), temperatureprogrammed desorption of NH3(NH3-TPD), H2temperature-programmed reduction(H2-TPR), and high-angle annular dark-field scanning transmission electron microscopy(HAADF-STEM). The results showed that the addition of Mo effectively improved the activity and stability of the Pd/Al2O3catalyst by increasing the dispersion of Pd active components, changing the partial oxidation state of palladium and increasing the oxygen species concentration on the surface of catalyst. In the case of the Pd-Mo/Al2O3catalyst,benzene conversion of 90% was obtained at temperatures as low as 190°C, which was 45°C lower than that for similar performance with the Pd/Al2O3catalyst. Moreover, the 1.0% Pd-5% Mo/Al2O3catalyst was more active than the 2.0% Pd/Al2O3catalyst. It was concluded that Pd and Mo have a synergistic effect in benzene catalytic combustion.  相似文献   
224.
In January 2013, a long-lasting severe haze episode occurred in Northern and Central China; at its maximum, it covered a land area of approximately 1.4 million km2. In Wuhan, the largest city in Central China, this event was the most severe haze episode in the 21st century. Aerosol samples of submicron particles (PM1.0) were collected during the long-lasting haze episode at an urban site and a suburban site in Wuhan to investigate the ion characteristics of PM1.0 in this area. The mass concentrations of PM1.0 and its water-soluble inorganic ions (WSIIs) were almost at the same levels at two sites, which indicates that PM1.0 pollution occurs on a regional scale in Wuhan. WSIIs (Na+, NH4+, K+, Mg2+, Ca2+, Cl-, NO3- and SO42-) were the dominant chemical species and constituted up to 48.4% and 47.4% of PM1.0 at WD and TH, respectively. The concentrations of PM1.0 and WSIIs on haze days were approximately two times higher than on normal days. The ion balance calculations indicate that the particles were more acidic on haze days than on normal days. The results of the back trajectory analysis imply that the high concentrations of PM1.0 and its water-soluble inorganic ions may be caused by stagnant weather conditions in Wuhan.  相似文献   
225.
Removal of noxious dyes is gaining public and technological attention. Herein grafting polymerization was employed to produce a novel adsorbent using acrylic acid and carboxymethyl cellulose for dye removal. Scanning electron microscopy and Fourier-transform infrared spectroscopy verified the adsorbent formed under optimized reaction conditions. The removal ratio of adsorbent to Methyl Orange, Disperse Blue 2BLN and malachite green chloride reached to 84.2%, 79.6% and 99.9%, respectively. The greater agreement between the calculated and experimental results suggested that pseudo second-order kinetic model better represents the kinetic adsorption data. Equilibrium adsorptions of dyes were better explained by the Temkin isotherm. The results implied that this new cellulose-based absorbent had the universaiity for removal of dyes through the chemical adsorption mechanism.  相似文献   
226.
采用混凝气浮+SBR处理年产1万t再生花炮纸工艺废水,对SS、CODCr、BOD5的处理效率分别为96.2%、96.2%、93.1%,最大日均值排放浓度分别为64mg/L、80.7mg/L、26mg/L,排放负荷分别为0.59kg/t、0.63kg/t、0.22 kg/t,均未超过标准限值的要求(pH范围为6.14-7.20);CODCr年排放总量5.4t小于20t/年;纸浆回收率92.0%、白水回用率94.4%、水循环利用率93.2%达标;实现"三排三率"六达标。  相似文献   
227.
总结了中国石化炼油企业构建QHSE管理体系的典型步骤和内容,描述了体系构建各阶段的工作和要求,并提出了构建QHSE管理体系过程中的关注要点.  相似文献   
228.
随着经济的发展、城市化进程的加快,城市危机的危害程度日益加剧。基于我国城市危机应急管理总存在的不足,提出将兵棋推演运用到城市危机应急管理中,结合兵棋推演技术、地理信息系统、现代计算机技术和信息技术。提出了一套城市危机应急管理体系框架,并讨论了该系统与城市公共安全体制的融合机制问题。该系统汇集中外危机处置案例,实现动态推演,弥补以往剧本式的应急演练的缺欠,为提高城市危机应急调度指挥的快速性、准确性和科学性,有效整合现有应急救援力量和资源提供了有效的辅助手段,为提升城市危机应急管理决策水平和综合能力提供参考。  相似文献   
229.
三峡库区消落带土壤汞形态分布与风险评价   总被引:18,自引:13,他引:5  
张成  陈宏  王定勇  孙荣国  张金洋 《环境科学》2014,35(3):1060-1067
为了解三峡库区消落带土壤中汞污染现状和环境风险,选择重庆14个区县的消落带,采集了192个土壤样品,分析其土壤总汞和汞形态分布,探讨其生物可利用性,对比研究和评估土壤总汞与汞赋存形态的污染水平和生态风险.结果表明,三峡库区消落带土壤中汞含量差异较大,土壤汞含量为22.4~393.5μg·kg-1,平均值为(84.2±54.3)μg·kg-1,76.6%的采样点土壤汞含量超过了三峡库区土壤汞背景值.土壤中的汞以残留态为主,不同汞形态所占比例为:水溶态汞4.1%、酸溶态15.5%、碱溶态汞18.3%、过氧化氢溶态汞10.9%、残留态汞51.3%.各区县土壤中生物可利用性汞(水溶态汞、酸溶态汞与碱溶态汞之和)平均含量为19.7~36.6μg·kg-1,生物可利用态汞占总汞的比例达到22.1%~51.6%.地累积指数和潜在生态危害指数评价结果均表明,三峡库区消落带土壤中汞赋存形态的污染水平和生态风险都较低,由生物可利用态汞带来的生态风险也很小;而对土壤总汞含量评价的结果明显偏大.因此,采用汞赋存形态进行污染现状和生态危害评价更能反映消落带土壤汞的环境风险.  相似文献   
230.
利用室内模拟试验,探讨了三峡水库消落区淹没后土壤、植物汞释放特征及其在斑马鱼体的富集水平.结果表明,随淹水时间的延长,淹没土壤中总汞(THg)含量下降;水体THg浓度总体明显升高.淹没土壤及水体中甲基汞(MMHg)含量总体明显上升,其中稗草+土壤处理水体中增加尤为明显,淹水21 d后,其浓度是土壤处理的2.52倍.表明消落区土壤、植物是水库水体汞的一个重要来源.供试稗草淹水分解造成水体pH及溶解氧(DO)含量下降、溶解性有机碳(DOC)含量上升,对土壤MMHg含量无明显影响,对水体MMHg影响较大.供试斑马鱼头部、内脏及肌肉中THg含量总体明显上升,与水体中THg浓度具有显著相关性(P<0.01).鱼体头部、内脏及肌肉中均出现不同程度的MMHg富集现象,以头部与肌肉最为明显.淹水21 d后,添加土壤处理的鱼体头部、内脏及肌肉MMHg增加的含量分别是对照的1.75~6.25、3.53~8.38、2.22~3.36倍;稗草+土壤处理的分别是土壤处理的3.57、2.37、1.52倍.可见,淹没土壤是鱼体MMHg增加的重要来源,淹没植物改变原水环境条件影响其向水体释汞过程能提高鱼体中MMHg含量.  相似文献   
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